The Impact of Ethylenediaminetetraacetic Acid (EDTA) on the Sorption of Nd(III), Th(IV), and U(VI) onto Dolomite in WIPP-Relevant Brines, GWB and ERDA-6 - 20356
Creators
- 1. Applied Research Center, Florida International University, Miami, FL (United States)
- 2. Carlsbad Operations, Los Alamos National Laboratory, Carlsbad, NM (United States)
- 3. Pacific Northwest National Laboratory, Richland, WA (United States)
Description
Storage of legacy, transuranic waste at the Waste Isolation Pilot Plant (WIPP) requires accurate risk models for performance assessments. These models must predict the long-term fate and transport of contaminants in the WIPP and surrounding environment. Laboratory support is necessary for the development of an accurate model through better understanding of contaminant behavior in the WIPP. The WIPP is a deep geologic repository that is characterized by high ionic strength due to evaporite deposits in the Salado formation (porewaters up to 7.4 M). High concentrations of sodium chloride (NaCl), calcium chloride (CaCl2), and magnesium chloride (MgCl2) are particularly of concern due to their potential impact on solubility and ultimately transport of contaminants of concern. Additionally, ligands capable of forming strong complexes with metals are found in significant concentrations in the WIPP environment due to their disposal from waste processing and formation during degradation of repository components (e.g. cellulose degradation by calcium hydroxide in cement). Consequently, there is a need to investigate the fate and transport of contaminants in the WIPP environment with a focus on the effects of high ionic strength and strongly coordinating ligands. Contaminants of high concern include the actinides (U(VI), Pu(IV), and Am(III)). Laboratory support of the WIPP modeling efforts was provided by this research. A series of batch experiments were utilized to study the impact of ionic strength, contaminant concentration, and the presence of ethylenediaminetetraacetic acid (EDTA) on the sorption of Nd(III), Th(IV), and U(VI) onto dolomite, a carbonate mineral found within the Culebra formation. The Culebra formation is the most transmissive layer above the WIPP, making transport of contaminants the most likely route in previous risk assessments. Two brines specifically designed to imitate conditions within the WIPP environment were used in these experiments. The U.S. Energy Research and Development Administration Well 6 (ERDA-6, 95%) brine simulates a low Mg environment, while the generic weep brine (GWB, 95%) simulates the WIPP environment with a high Mg concentration. Mg is added to the repository in the form of MgO as an engineered barrier and is naturally present in some formations. It is expected to scavenge carbonate from solutions decreasing formation of the highly soluble and competitive uranium-carbonate complexes. EDTA is used during manipulations of nuclear materials due to its ability to form strong, stable complexes with the actinides and may be found in high concentrations (up to 0.08 mM) within the WIPP as waste canisters degrade. Further, it may provide additional avenues for unwanted transport of contaminants. Nd(III) and Th(IV) were used as stable analogues of Am(III) and Pu(IV), respectively, to represent the most common oxidation states of actinides in the WIPP environment in addition to U(VI). The potential for colloid formation was also investigated with low and high concentrations of contaminants (10 and 1000 μg/L) using three size-dependent particle separation steps. The results of this research provide a better understanding of potential behavior of actinides in the presence of EDTA and within WIPP-relevant brines. (authors)
Availability note (English)
Available from: WM Symposia, Inc., PO Box 27646, 85285-7646 Tempe, AZ (US)Additional details
Identifiers
Publishing Information
- Imprint Pagination
- 9 p.
- Report number
- INIS-US--21-WM-20356
Conference
- Title
- 46. Annual Waste Management Conference
- Acronym
- WM2020
- Dates
- 8-12 Mar 2020
- Place
- Phoenix, AZ (United States)
INIS
- Country of Publication
- United States
- Country of Input or Organization
- France
- INIS RN
- 52070867
- Subject category
- S12: MANAGEMENT OF RADIOACTIVE WASTES, AND NON-RADIOACTIVE WASTES FROM NUCLEAR FACILITIES; S37: INORGANIC, ORGANIC, PHYSICAL AND ANALYTICAL CHEMISTRY;
- Resource subtype / Literary indicator
- Conference, Non-conventional Literature
- Descriptors DEI
- ACTINIDES; ALPHA-BEARING WASTES; CALCIUM CHLORIDES; CALCIUM HYDROXIDES; CELLULOSE; CEMENTS; COLLOIDS; COMPUTERIZED SIMULATION; EDTA; EVAPORITES; LIGANDS; MAGNESIUM CHLORIDES; MAGNESIUM OXIDES; RADIOACTIVE WASTE PROCESSING; RISK ASSESSMENT; SODIUM CHLORIDES; SOLUBILITY; SORPTION; URANIUM CARBONATES; WIPP
- Descriptors DEC
- ACTINIDE COMPOUNDS; ALKALI METAL COMPOUNDS; ALKALINE EARTH METAL COMPOUNDS; AMINO ACIDS; BUILDING MATERIALS; CALCIUM COMPOUNDS; CALCIUM HALIDES; CARBOHYDRATES; CARBON COMPOUNDS; CARBONATES; CARBOXYLIC ACIDS; CHALCOGENIDES; CHELATING AGENTS; CHLORIDES; CHLORINE COMPOUNDS; DISPERSIONS; ELEMENTS; FUNCTIONAL MODELS; HALIDES; HALOGEN COMPOUNDS; HYDROGEN COMPOUNDS; HYDROXIDES; MAGNESIUM COMPOUNDS; MAGNESIUM HALIDES; MANAGEMENT; MATERIALS; METALS; NATIONAL ORGANIZATIONS; NUCLEAR FACILITIES; ORGANIC ACIDS; ORGANIC COMPOUNDS; OXIDES; OXYGEN COMPOUNDS; PILOT PLANTS; POLYSACCHARIDES; PROCESSING; RADIOACTIVE MATERIALS; RADIOACTIVE WASTE FACILITIES; RADIOACTIVE WASTE MANAGEMENT; RADIOACTIVE WASTES; ROCKS; SACCHARIDES; SEDIMENTARY ROCKS; SIMULATION; SODIUM COMPOUNDS; SODIUM HALIDES; UNDERGROUND FACILITIES; URANIUM COMPOUNDS; US DOE; US ORGANIZATIONS; WASTE MANAGEMENT; WASTE PROCESSING; WASTES
Optional Information
- Notes
- 20 refs.; available online at: https://www.xcdsystem.com/wmsym/2020/index.html